The Impact of Small-Angle Scattering on Ballistic Transport in Quantum Dots
Abstract
Disorder increasingly affects performance as electronic devices are reduced in size. The ionized dopants used to populate a device with electrons are particularly problematic, leading to unpredictable changes in the behavior of devices such as quantum dots each time they are cooled for use. We show that a quantum dot can be used as a highly sensitive probe of changes in disorder potential, and that by removing the ionized dopants and populating the dot electrostatically, its electronic properties become reproducible with high fidelity after thermal cycling to room temperature. Our work demonstrates that the disorder potential has a significant, perhaps even dominant, influence on the electron dynamics, with important implications for `ballistic' transport in quantum dots.
Keywords
Cite
@article{arxiv.1204.0158,
title = {The Impact of Small-Angle Scattering on Ballistic Transport in Quantum Dots},
author = {A. M. See and I. Pilgrim and B. C. Scannell and R. D. Montgomery and O. Klochan and A. M. Burke and M. Aagesen and P. E. Lindelof and I. Farrer and D. A. Ritchie and R. P. Taylor and A. R. Hamilton and A. P. Micolich},
journal= {arXiv preprint arXiv:1204.0158},
year = {2012}
}
Comments
In press for Phys. Rev. Lett